| Literature DB >> 23533735 |
Olivier Flechelles1, Annie Ho, Patrice Hernert, Guillaume Emeriaud, Nesrine Zaglam, Farida Cheriet, Philippe A Jouvet.
Abstract
Mechanical ventilation is a very effective therapy, but with many complications. Simulators are used in many fields, including medicine, to enhance safety issues. In the intensive care unit, they are used for teaching cardiorespiratory physiology and ventilation, for testing ventilator performance, for forecasting the effect of ventilatory support, and to determine optimal ventilatory management. They are also used in research and development of clinical decision support systems (CDSSs) and explicit computerized protocols in closed loop. For all those reasons, cardiorespiratory simulators are one of the tools that help to decrease mechanical ventilation duration and complications. This paper describes the different types of simulators described in the literature for physiologic simulation and modeling of the respiratory system, including a new simulator (SimulResp), and proposes a validation process for these simulators.Entities:
Year: 2013 PMID: 23533735 PMCID: PMC3606750 DOI: 10.1155/2013/943281
Source DB: PubMed Journal: Crit Care Res Pract ISSN: 2090-1305
Different types of simulators available in 2012.
| Different simulators | Aim | |||||||
|---|---|---|---|---|---|---|---|---|
| Teaching | Ventilator | Ventilatory | Ventilation | Research and | Adult | Child | ||
| Physiology | Ventilation | |||||||
| Mechanics simulators | ||||||||
| Homemade [ |
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| PneuView* |
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| ASL5000** |
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| Series 1101*** |
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| NA | ||||
| Ventilator simulators | ||||||||
| Virtual ventilator [ |
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| NA | |||||
| Purchasing decision tool |
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| NA | |||||
| Evita_trainer† |
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| Mechanical ventilation simulator |
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| Physiology cardiorespiratory simulators | ||||||||
| MacPuf [ |
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| HUMAN [ |
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| NA | |||||
| VentSim [ |
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| NA | ||||
| SimuVent [ |
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| NA | |||
| Nottingham physiology simulator (NPS) [ |
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| NA | |||||
| Intelligent ventilator [ |
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| NA | ||||
| VO2.htm [ |
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| NA | |||||
| SOPAVent [ |
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| NA | ||||
| NPS + Matlab [ |
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| NA | |||||
| ARDS simulator [ |
| NA |
| NA | ||||
| SimulResp [ |
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| High-fidelity patient simulators | ||||||||
| SimMan‡ |
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| Human patient simulator‡‡ |
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Nonexhaustive list. NA: information not available. *Michigan Instruments Inc., Grand Rapids, US. **IngMar Medical, Ltd., Pittsburgh, US. ***Hans Rudolph, Inc., Shawnee, US. †Draeger, Siegen, Germany. ‡Laerdal Medical, Stavanger, Norway. ‡‡CAE Healthcare, Montreal, Canada.
Figure 1Schematic presentation of the cardiorespiratory model developed by Dickinson and used in the SimulResp simulator. ALI: acute lung injury, ARDS: Acute Respiratory Distress Syndrome.
Figure 2Schematic presentation of the interaction between a simulator and a clinical decision support system during the R&D phase. PaCO2: partial pressure of carbon dioxide, ET PCO2: end-tidal PCO2, PaO2: partial pressure of oxygen, SpO2: saturation of peripheral oxygen, FiO2: fraction of inspired oxygen, PIP: positive inspiratory pressure, PEEP: positive end-expiratory pressure, I/E ratio: inspiratory/expiratory ratio, RR: respiratory rate, CDSS: clinical decision support system.
Figure 3Picture of the cardiorespiratory simulator, SimulResp.